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1.
为了提高秸秆纤维素乙醇废水的处理效果,选择6种东北土著白腐真菌,对2%的秸秆纤维素乙醇废水中木质素进行降解处理.采用正交试验法对筛选出的高效降解菌进行产漆酶培养基的优化.结果表明:6种白腐真菌最高酶活大小顺序为青顶拟多孔菌>血红密孔菌>糙皮侧耳菌>彩绒革盖菌>烟色烟管菌>灵芝;血红密孔菌、糙皮侧耳菌、彩绒革盖菌、青顶拟多孔菌、灵芝、烟色烟管菌在第0天起始质量浓度为640.9~716.6 mg/L,在第14天木质素的质量浓度分别为434.0、411.2、441.8、441.7、533.3、503.5 mg/L,对木质素的去除率分别为37.1%、37.0%、31.8%、31.7%、25.6%、21.4%,并分别在第12、12、4、4、2、6天木质素降解趋于平稳,表明降解效果最好的菌种为血红密孔菌.血红密孔菌产漆酶培养基最优组合方案:最佳碳源为锯末,质量浓度为35 g/L;最佳氮源为蛋白胨,质量浓度为4 g/L;最佳pH为5.极差分析表明,各因素对血红密孔菌产漆酶的影响顺序为碳源>氮源> pH >氮源质量浓度>碳源质量浓度.在最佳培养基条件下,废水中木质素降解率达41.1%.研究显示,血红密孔菌可以作为生物法处理秸秆纤维素乙醇废水的菌种资源,也可为今后的进一步应用研究提供科学依据.   相似文献   

2.
黄孢原毛平革菌用于煤炭脱硫的特性   总被引:4,自引:0,他引:4  
研究了表面活性剂Tween80、碳源浓度、初始pH值、孢子浓度和煤浆浓度对黄孢原毛平革菌(Phanerochaete chrysosporium)煤炭脱硫的影响.结果表明,黄孢原毛平革菌具有较强的脱除煤炭中硫的能力.该菌株的最佳脱硫条件为0.5%Tween80,20g/L葡萄糖,10%煤浆,孢子浓度1×105个/mL,pH4.5.在此最佳条件下,第3d的菌丝球生长均匀,生物量最大,第6d的煤样脱硫率达到78.11%.  相似文献   

3.
研究了添加表面活性剂Tween-80和生物表面活性剂鼠李糖脂对从堆肥中筛选得到的铜绿假单胞菌和枯草芽孢杆菌生产蛋白酶的影响.用固态发酵的方法,对添加不同浓度的表面活性剂对这2种微生物产蛋白酶能力的影响、2种微生物产蛋白酶能力的差异以及发酵过程中的一些参数(包括菌体数、酶提取液表面张力、pH值和挥发性有机质)进行了考察.结果表明,Tween-80对铜绿假单胞菌和枯草芽孢杆菌产蛋白酶有较大促进作用,添加浓度为0.05%时,能分别使铜绿假单胞菌和枯草芽孢杆菌产蛋白酶最高酶活提高65%和30%;鼠李糖脂对铜绿假单胞菌产蛋白酶有轻微抑制作用,但能将枯草芽孢杆菌产蛋白酶,当添加浓度为0.018%时,鼠李糖脂能将枯草芽孢杆菌产蛋白酶最高酶活提高51%.铜绿假单胞菌产蛋白酶能力明显强于枯草芽孢杆菌,前者对照样的蛋白酶产量是后者对照样蛋白酶产量的6倍多.发酵过程中,铜绿假单胞菌酶提取液的表面张力明显低于枯草芽孢杆菌;添加表面活性剂对菌体生长有一定影响,但对pH值变化影响不大;挥发性有机质变化与微生物酶活成正相关关系.  相似文献   

4.
木薯酒精糟因其低营养高含水量而难以利用和处理,目前对新鲜木薯酒精糟主要采用机械脱水及干燥的方法,但此类方法的经济成本和能耗都较高,很难形成产业化。该实验在木薯酒精糟中通过用刚果红培养基初筛和杜博氏培养基复筛得到一株耐酒精的纤维素分解菌,编为13号。经16S rRNA序列鉴定与链霉菌同源性达99%。其最适生长pH值为6.5,最适生长温度为40℃。对酒精有一定的耐受性,能在酒精浓度为6%的环境中生长,并且在酒精浓度为1%时对菌株生长影响不大。同时该菌能在40℃的温度条件下保持良好的生长态势,对适应废物堆肥发酵后期熟化产生有益次生代谢产物有利。所以利用此菌耐酒精、产纤维素酶且较耐高温等特性,对于处理含酒精的纤维素废物具有较好的应用前景。  相似文献   

5.
氧化亚铁硫杆菌培养条件的筛选及脱硫效果研究   总被引:4,自引:1,他引:3  
从湖南某煤矿附近的土壤中,分离出能有效脱除燃煤中硫的菌株TFD-9,鉴定为氧化亚铁硫杆菌。通过不同温度、pH值和底物浓度对TFD-9菌生物量的影响,确定了最适宜的培养条件;并试验了该菌株对不同能源物质的利用以及对煤的脱硫能力。实验表明:TFD-9菌的适宜生长条件为温度30℃、Fe2+浓度9g/L、pH值2.0,此时最大生物量达到9.26×107个/mL;菌株对能源物质的利用能力分别为Fe2+100%,S2O32-62%,S少于50%;生物处理20d燃煤总硫脱除率为75.6%,硫化物硫脱除率为82.75%。  相似文献   

6.
通过筛选获得1株Shewanella baltica,分别改变阳极基质种类、浓度、pH和温度,考察不同条件下接种该菌后MFC产电特性.乳酸钠作为基质时接种该菌的MFC产电功率密度最大,MFC产电功率密度和基质浓度满足Monod模型.阳极溶液pH和温度对接种该菌的MFC产电功率密度影响最大.阳极溶液pH为8时接种该菌的MFC产电功率密度最大可达1236mW/m2,最大功率密度上升主要是阳极内阻和阳极电势影响所致.接种该菌的MFC最大产电功率密度在50℃达到1197mW/m2,最大功率密度随温度变化的主要原因是温度对阳极内阻的影响,20~50℃时MFC电流密度与温度满足Arrhenius方程.  相似文献   

7.
初始pH对酸性预处理污泥厌氧发酵产氢的影响   总被引:4,自引:2,他引:2  
对污泥进行不同pH值的酸性预处理,用HCl将污泥pH值分别调到2.0、3.0、4.0、5.0,在4℃条件下放置24 h,然后再用NaOH分别调到2.0~12.0用于批量试验,系统考察了不同初始pH值对酸性预处理污泥厌氧发酵产氢的影响.研究表明,初始pH为2.0~4.0以及12.0时对产氢菌及耗氢菌有抑制作用,总体产氢量少;初始pH为5.0~9.0时,甲烷菌及产氧菌均活跃,产氢滞后时间短.但总体产氢量少;初始pH为11.0时,甲烷菌受到明显抑制,而产氢菌仍然活跃,总体产氢量较高,发酵后期pH恒定在7.0~8.0,经pH为2.0、3.0、4.0和5.0酸性预处理的污泥(干重)累积产氢量分别为0.59、1.83、0.50和0.56 mL/g.  相似文献   

8.
以接枝改性后的纤维素SCB为载体,采用液相还原法制备改性纤维素负载零价铁吸附剂ZVI-SCB,利用XRD、ESEM进行表征,并研究其对三氯甲烷(TCM)的去除性能.系统探讨了不同材料、ZVI-SCB投加量、TCM的初始质量浓度、pH值和氯离子质量浓度对TCM去除性能的影响.在ZVI-SCB投加量为5g/L,TCM的初始质量浓度为36.7mg/L,pH值为3.1时,TCM的去除率高达84.4%.采用准一级方程和准二级方程对ZVI-SCB去除TCM的过程进行拟合,准二级动力学方程相关系数R的范围为0.996~0.999,证明ZVI-SCB对TCM的去除过程符合二级动力学模型.  相似文献   

9.
以接枝改性后的纤维素SCB为载体,采用液相还原法制备改性纤维素负载零价铁吸附剂ZVI-SCB,利用XRD、ESEM进行表征,并研究其对三氯甲烷(TCM)的去除性能.系统探讨了不同材料、ZVI-SCB投加量、TCM的初始质量浓度、pH值和氯离子质量浓度对TCM去除性能的影响.在ZVI-SCB投加量为5g/L,TCM的初始质量浓度为36.7mg/L,pH值为3.1时,TCM的去除率高达84.4%.采用准一级方程和准二级方程对ZVI-SCB去除TCM的过程进行拟合,准二级动力学方程相关系数R的范围为0.996~0.999,证明ZVI-SCB对TCM的去除过程符合二级动力学模型.  相似文献   

10.
一株纤维素降解细菌的分离及特性研究   总被引:10,自引:2,他引:10  
从造纸厂污泥中分离得到了一株能以纤维素为唯一碳源生长良好的纤维素降解菌w 3 ,经鉴定 ,该菌株为假单胞菌属 (Pseu domonassp.) ,不产色。最适生长及产酶温度为 30℃ ,产酶最适pH值为 7.5 ,生长及产酶高峰出现在 2 0h ,比文献报道的时间提前较多 ,CMC酶活为 60 μg/min。另外 ,w 3能较好地适应微碱性的环境。对造纸废水处理非常有利。  相似文献   

11.
Protein-like substances always induce severe ultrafiltration (UF) membrane fouling. To systematically understand the effect of proteins, regenerated cellulose UF membrane (commonly used for protein separation) performance was investigated in the presence of bovine serum albumin (BSA) under various water conditions. Results showed that although trypsin enhanced the membrane flux via proteolysis, catalysis took a long time. Membrane fouling was alleviated at high solution pH and low water temperature owing to the strong electrostatic repulsion force among BSA molecules. Both Na+ and Ca2+ could increase membrane flux. However, Ca2+ played a bridging role between adjacent BSA molecules, whereas membrane fouling was alleviated via a hydration repulsion force with Na+. The order of influence on membrane fouling was as follows: Ca2+ concentration > Na+ concentration > pH > temperature > trypsin concentration. Furthermore, a polyvinylidene fluoride UF membrane experiment showed that Ca2+ could reduce the fouling induced by BSA. Thus, the differences in UF membrane performance will have application potential for alleviating UF membrane fouling induced by proteins during water treatment.  相似文献   

12.
方治国  欧阳志云 《环境科学》2010,31(8):1926-1931
以高温厌氧细菌热纤维梭菌(Clostridium thermocellum LQRI和VPI菌株)和嗜热厌氧乙醇菌(Thermoanaerobacterethanolicus X514和39E菌株)为对象,以不同浓度纤维素为底物,分析了热纤维梭菌不同菌株的纤维素降解和酒精生产能力.结果表明,在热纤维梭菌纯培养体系中,LQRI对纤维素的降解能力明显高于VPI,前者约为后者的1.2倍,但两者的酒精生产能力没有显著差异,LQRI在1%纤维素条件下酒精终浓度约为12 mmol/L,VPI约为10 mmol/L.随着底物纤维素浓度的增加(1%、2%、5%),两者对纤维素降解和酒精生产能力均呈明显下降趋势.在热纤维梭菌和嗜热厌氧乙醇菌混合培养体系中,LQRI对纤维素的降解能力明显高于VPI,前者约为后者的1.28~1.58倍.随着底物浓度的增加,两者的纤维素降解率均逐渐下降,但热纤维梭菌对纤维素降解的绝对数值还受到其它混合培养菌种的影响.此外,LQRI+Thermoanaerobacter混合培养体系的酒精生产能力明显高于VPI+Thermoanaerobacter,前者约为后者的1.27~1.77倍.随着底物浓度的增加,混合培养体系酒精生产能力没有明显下降趋势.  相似文献   

13.
污水处理厂活性污泥中甲烷袋状菌的分离与鉴定   总被引:2,自引:0,他引:2  
利用亭盖特厌氧操作技术,从石家庄污水处理厂活性污泥中分离出一株产甲烷古菌QDW.该菌株为不规则球形,直径1-2μm,不产芽孢、革兰氏阴性、不运动、极端严格厌氧.最适生长温度为37℃,最适pH为7.0~7.5,最适盐浓度<0.1 mol/L,以甲酸钠、乙酸钠、乙二醇、H2/CO2为底物产甲烷,不能利用甲醇、丙二醇和甲基胺...  相似文献   

14.
Combination effect of pH and acetate on enzymatic cellulose hydrolysis   总被引:1,自引:0,他引:1  
The productivity and efficiency of cellulase are significant in cellulose hydrolysis. With the accumulation of volatile fatty acids (VFAs), the pH value in anaerobic digestion system is reduced. Therefore, this study will find out how the pH and the amount of acetate influence the enzymatic hydrolysis of cellulose. The effects of pH and acetate on cellulase produced from Bacillus coagulans were studied at various pH 5-8, and acetate concentrations (0-60 mmol/L). A batch kinetic model for enzymatic cellulose hydrolysis was constructed from experimental data and performed. The base hypothesis was as follows: the rates of enzymatic cellulose hydrolysis rely on pH and acetate concentration. The results showed that the suitable pH range for cellulase production and cellulose hydrolysis (represents efficiency of cellulase) was 2.6-7.5, and 5.3-8.3, respectively. Moreover, acetate in the culture medium had an effect on cellulase production (K1= 49.50 mmol/L, n=1.7) less than cellulose hydrolysis (K1=37.85 mmol/L, n=2.0). The results indicated that both the pH of suspension and acidogenic products influence the enzymatic hydrolysis of cellulose in an anaerobic environment. To enhance the cellulose hydrolysis rate, the accumulated acetate concentration should be lower than 25 mmol/L, and pH should be maintained at 7.  相似文献   

15.
The productivity and e ciency of cellulase are significant in cellulose hydrolysis. With the accumulation of volatile fatty acids (VFAs), the pH value in anaerobic digestion system is reduced. Therefore, this study will find out how the pH and the amount of acetate influence the enzymatic hydrolysis of cellulose. The e ects of pH and acetate on cellulase produced from Bacillus coagulans were studied at various pH 5–8, and acetate concentrations (0–60 mmol/L). A batch kinetic model for enzymatic cellulose hydrolysis was constructed from experimental data and performed. The base hypothesis was as follows: the rates of enzymatic cellulose hydrolysis rely on pH and acetate concentration. The results showed that the suitable pH range for cellulase production and cellulose hydrolysis (represents e ciency of cellulase) was 2.6–7.5, and 5.3–8.3, respectively. Moreover, acetate in the culture medium had an e ect on cellulase production (KI = 49.50 mmol/L, n = 1.7) less than cellulose hydrolysis (KI = 37.85 mmol/L, n = 2.0). The results indicated that both the pH of suspension and acidogenic products influence the enzymatic hydrolysis of cellulose in an anaerobic environment. To enhance the cellulose hydrolysis rate, the accumulated acetate concentration should be lower than 25 mmol/L, and pH should be maintained at 7.  相似文献   

16.
黄兵  杨靖中 《环境工程》1998,16(4):25-27
以某炼铁高炉妆环水为对象,对循环冷却水高PH碱性运行阻垢缓蚀进行了研究,筛选出了一复合配方。工业应用试验结果表明,此配方对A3钢的污垢附着速率,腐蚀速率和污垢热阻均低于国家规定的指标要求,说明该配方具有良好的阻垢缓蚀性能。  相似文献   

17.
以DDT为目标污染物,通过筛选获得了一株效果稳定的DDT降解菌,并对其进行形态学观察,生理生化特性及16S rRNA测序鉴定.经鉴定,该菌株属于甲基菌属(Methylovorus),命名为Methylovorus sp. XLL03.菌株在pH值为7,温度30℃,外加碳源浓度0.5%,初始DDT浓度20mg/L时生长量最大.在pH值为6,温度30℃下,外加碳源(葡萄糖)浓度0.1%,初始DDT浓度20mg/L时对DDT的降解率最大.在优化条件下,4d后菌株XLL03对DDT最高降解率可达50.4%.利用GC-MS对DDT的降解中间产物进行定性分析,初步推断在菌株XLL03中,DDT最初分别通过脱氯和脱氯化氢生成DDD和DDE,随后DDD和DDE进一步脱氯得到DDMU,最终DDMU开环后又经过一系列反应被彻底矿化.在DDT的代谢过程中,未发现代谢中间产物的积累,表明菌株XLL03在修复受DDT污染的水或土壤中具有一定的应用前景.  相似文献   

18.
The combined fouling during ultrafiltration(UF) of surface water pretreated to different extents was investigated to disclose the roles of polysaccharides, proteins, and inorganic particles in UF membrane fouling. Both reversible and irreversible fouling decreased with enhanced pretreatment(biologically active carbon(BAC) treatment and sand filtration). The sand filter effluent fouled the membrane very slowly. The UF membrane removed turbidity to less than 0.1 nephelometric turbidity unit(NTU), reduced polysaccharides by 25.4%–29.9%, but rejected few proteins. Both polysaccharides and inorganic particles were detected on the fouled membranes, but inorganic particles could be effectively removed by backwashing. The increase of turbidity in the sand filter effluent to 3.05 NTU did not significantly increase the fouling rate, but an increase in the turbidity in the BAC effluent to6.11 NTU increased the fouling rate by more than 100%. The results demonstrated that the polysaccharide, not the protein, constituents of biopolymers were responsible for membrane fouling. Membrane fouling was closely associated with a small fraction of polysaccharides in the feed water. Inorganic particles exacerbated membrane fouling only when the concentration of fouling–inducing polysaccharides in the feed water was relatively high. The combined fouling was largely reversible, and polysaccharides were the predominant substances responsible for irreversible fouling.  相似文献   

19.
从甘蔗糖厂污泥样品中,分离纯化得到一株革兰氏阳性厌氧产氢菌。经16S rDNA分子生物学鉴定,该菌株为Clostridium sp.60E(注册号:JF708079)。对该菌株生长及产氢特性的研究发现,其产氢主要发生在细胞生长对数期的中后期和稳定期。温度及pH值单因素实验显示,Clostridium sp.60E为一株中温产氢菌,有较好的耐酸能力。采用正交实验研究方法优化产氢条件,发现起始pH值为5,培养温度为35℃,碳源选择葡萄糖时,其总产氢量最高可达到(208±8.01)mL H2/100 mL培养基,比优化前提高了142%,产氢纯度最高达到55.32%,最高产氢速率为(188±8.72)mL H2/(L.h)、15.99 mmo(l H)2g(/dry cell.h)。以上研究表明,从糖厂污泥中筛选的Clostridium sp.60E是一株良好的厌氧发酵产氢菌,将其应用于废水处理,可以实现有机废水的高效制氢,是实现废水和有机废物资源化的一条有效途径。  相似文献   

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